首页> 外文期刊>Cladistics: The international journal of the Willi Hennig Society >Large genetic divergence of new, morphologically similar species of sterile lichens from Europe (Lepraria, Stereocaulaceae, Ascomycota): concordance of DNA sequence data with secondary metabolites
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Large genetic divergence of new, morphologically similar species of sterile lichens from Europe (Lepraria, Stereocaulaceae, Ascomycota): concordance of DNA sequence data with secondary metabolites

机译:来自欧洲的新的,形态相似的不育地衣(Lepraria,Stereocaulaceae,Ascomycota)的遗传差异很大:DNA序列数据与次生代谢产物的一致性

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摘要

Lichenized fungi of the genus Lepraria are known for their paucity of morphological characters. Species identification is therefore largely based on secondary chemistry. We investigated different chemotypes of the morphologically highly similar L. jackii species complex by internal transcribed spacer (ITS) sequencing. In phylogenetic analyses including all available Lepraria species, samples belonging to different chemotypes of the L. jackii agg. corresponded to four highly divergent clusters. While true L. jackii was genetically uniform, the other three clades represented previously unrecognized species. They originated from different major speciation events, and two of them were not closely related to any other species. Assessment of intraspecific genetic variability revealed four different patterns with respect to geographic scale. ITS sequences proved to be the most reliable and distinctive characters for species recognition in the Lepraria jackii complex and were in accordance with chemical and ecogeographic data. Frequent occurrence of long branches, relatively few resolved relationships despite high genetic variability, and the discovery and description of a considerable part of the Lepraria species within the last 10 years suggest that the genus is probably much larger than currently known. The diversification of this asexual group in the potential absence of recombination is discussed. pb The Willi Hennig Society 2008.
机译:Lepraria属的苔藓化真菌因缺乏形态特征而闻名。因此,物种鉴定主要基于次级化学。我们通过内部转录间隔区(ITS)测序调查了形态高度相似的杰克劳氏菌物种复合物的不同化学型。在系统发育分析中,包括所有可用的Lepraria物种,这些样品属于L. jackii agg的不同化学型。对应于四个高度分散的集群。真正的杰克逊乳杆菌在遗传上是统一的,而其他三个进化枝则代表了以前无法识别的物种。它们起源于不同的主要物种形成事件,其中两个与其他物种没有密切关系。种内遗传变异的评估揭示了关于地理范围的四种不同模式。 ITS序列被证明是Lepraria jackii复合体中最可靠和独特的物种识别特征,并且与化学和生态地理数据一致。长枝的频繁发生,尽管遗传变异性很高,但解决的关系相对较少,最近十年来发现和描述了相当一部分Lepraria物种,表明该属可能比目前已知的大得多。讨论了在无重组的情况下该无性群体的多样化。 pb 2008年威利·亨尼格学会(Willi Hennig Society)。

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